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气管器官培养中鳞状化生(维生素A缺乏)的诱导及高分泌活性

Induction of squamous metaplasia (vitamin A deficiency) and hypersecretory activity in tracheal organ cultures.

作者信息

Marchok A C, Cone V, Nettesheim P

出版信息

Lab Invest. 1975 Oct;33(4):451-60.

PMID:1186125
Abstract

Maintenance of rat tracheal organ cultures in various nutritional environments was studied. In Waymouth's 752/1 defined, vitamin A-free medium the mucociliary epithelium, at the site of the original mucosa, changed to a highly active keratinizing squamous epithelium. Epithelial cells that migrated from the original mucosa and covered the underside of the tracheal explants developed into keratinizing squamous epithelium with in a few days. These transitions were accompanied by high rates of DNA synthesis as revealed by 3H-thymidine incorporation into the explants. Addition of 10 per cent horse serum to the Waymouth's medium completely inhibited squanous metaplasia. In this medium, the actively secreting mucociliary epithelium of the original mucosa slowly became quiescent, and the undergrowth epithelium usually remained undifferentiated. These explants maintained a lower level of DNA synthesis. When vitamin A (all trans retinol) was added to the serum-supplemented medium, 0.2 and 2.0 mug. per ml. induced hypersecretory activity in the original mucosa. Addition of 2.0 mug. per ml. also stimulated cellular hyperplasia and mitoses. A concentration of 20 mug. of vitamin A per milliliter of medium was toxic. It is concluded that a spectrum of epithelial cell types normally found in the tracheal mucosa in vivo can be induced and maintained in tracheal organ cultures in vitro by selection of the appropriate nutritional environment.

摘要

研究了大鼠气管器官培养物在不同营养环境中的维持情况。在不含维生素A的Waymouth's 752/1限定培养基中,原始黏膜部位的黏液纤毛上皮转变为高度活跃的角化鳞状上皮。从原始黏膜迁移并覆盖气管外植体下侧的上皮细胞在几天内发育成角化鳞状上皮。如通过将³H-胸腺嘧啶掺入外植体所揭示的,这些转变伴随着高DNA合成率。向Waymouth's培养基中添加10%马血清可完全抑制鳞状化生。在这种培养基中,原始黏膜中活跃分泌的黏液纤毛上皮逐渐变得静止,而生长不足的上皮通常保持未分化状态。这些外植体维持较低水平的DNA合成。当向补充血清的培养基中添加维生素A(全反式视黄醇)时,每毫升0.2和2.0微克可诱导原始黏膜的高分泌活性。每毫升添加2.0微克还刺激细胞增生和有丝分裂。每毫升培养基中20微克的维生素A浓度具有毒性。结论是,通过选择合适的营养环境,体内气管黏膜中正常发现的一系列上皮细胞类型可在体外气管器官培养物中诱导并维持。

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